Wang Lu, Ruan Yong-Ling
School of Environmental and Life Sciences and Australian-China Research Centre for Crop Improvement, University of Newcastle, Callaghan, New South Wales 2308, Australia.
School of Environmental and Life Sciences and Australian-China Research Centre for Crop Improvement, University of Newcastle, Callaghan, New South Wales 2308, Australia
Plant Physiol. 2016 May;171(1):405-23. doi: 10.1104/pp.16.00197. Epub 2016 Mar 11.
Seed number and quality are key traits determining plant fitness and crop yield and rely on combined competence in male and female fertilities. Sucrose metabolism is central to reproductive success. It remains elusive, though, how individual sucrose metabolic enzymes may regulate the complex reproductive processes. Here, by silencing vacuolar invertase (VIN) genes in cotton (Gossypium hirsutum) reproductive organs, we revealed diverse roles that VIN plays in multiple reproductive processes. A set of phenotypic and genetic studies showed significant reductions of viable seeds in GhVIN1-RNAi plants, attributed to pollination failure and impaired male and female fertilities. The former was largely owing to the spatial mismatch between style and stamen and delayed pollen release from the anthers, whereas male defects came from poor pollen viability. The transgenic stamen exhibited altered expression of the genes responsible for starch metabolism and auxin and jasmonic acid signaling. Further analyses identified the reduction of GhVIN expression in the seed coat as the major cause for the reduced female fertility, which appeared to disrupt the expression of some key genes involved in trehalose and auxin metabolism and signaling, leading to programmed cell death or growth repression in the filial tissues. Together, the data provide an unprecedented example of how VIN is required to synchronize style and stamen development and the formation of male and female fertilities for seed development in a crop species, cotton.
种子数量和质量是决定植物适合度和作物产量的关键性状,并且依赖于雄性和雌性育性的综合能力。蔗糖代谢对于生殖成功至关重要。然而,单个蔗糖代谢酶如何调节复杂的生殖过程仍不清楚。在这里,通过沉默棉花(陆地棉)生殖器官中的液泡转化酶(VIN)基因,我们揭示了VIN在多个生殖过程中所起的不同作用。一系列表型和遗传学研究表明,GhVIN1-RNAi植株中 viable 种子显著减少,这归因于授粉失败以及雄性和雌性育性受损。前者很大程度上是由于花柱和雄蕊之间的空间不匹配以及花药中花粉释放延迟,而雄性缺陷则源于花粉活力差。转基因雄蕊表现出负责淀粉代谢以及生长素和茉莉酸信号传导的基因表达改变。进一步分析确定种皮中GhVIN表达的降低是雌性育性降低的主要原因,这似乎破坏了一些参与海藻糖和生长素代谢及信号传导的关键基因的表达,导致子代组织中的程序性细胞死亡或生长抑制。总之,这些数据提供了一个前所未有的例子来说明VIN对于棉花这种作物物种中花柱和雄蕊发育以及种子发育所需的雄性和雌性育性形成的同步是必需的。